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Cerebral Apolipoprotein D Exits the Brain and Accumulates in Peripheral Tissues

Apolipoprotein D (ApoD) is a secreted lipocalin associated with neuroprotection and lipid metabolism. In rodent, the bulk of its expression occurs in the central nervous system. Despite this, ApoD has profound effects in peripheral tissues, indicating that neural ApoD may reach peripheral organs. We...

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Autores principales: Desmarais, Frederik, Hervé, Vincent, Bergeron, Karl F., Ravaut, Gaétan, Perrotte, Morgane, Fyfe-Desmarais, Guillaume, Rassart, Eric, Ramassamy, Charles, Mounier, Catherine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8073497/
https://www.ncbi.nlm.nih.gov/pubmed/33923459
http://dx.doi.org/10.3390/ijms22084118
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author Desmarais, Frederik
Hervé, Vincent
Bergeron, Karl F.
Ravaut, Gaétan
Perrotte, Morgane
Fyfe-Desmarais, Guillaume
Rassart, Eric
Ramassamy, Charles
Mounier, Catherine
author_facet Desmarais, Frederik
Hervé, Vincent
Bergeron, Karl F.
Ravaut, Gaétan
Perrotte, Morgane
Fyfe-Desmarais, Guillaume
Rassart, Eric
Ramassamy, Charles
Mounier, Catherine
author_sort Desmarais, Frederik
collection PubMed
description Apolipoprotein D (ApoD) is a secreted lipocalin associated with neuroprotection and lipid metabolism. In rodent, the bulk of its expression occurs in the central nervous system. Despite this, ApoD has profound effects in peripheral tissues, indicating that neural ApoD may reach peripheral organs. We endeavor to determine if cerebral ApoD can reach the circulation and accumulate in peripheral tissues. Three hours was necessary for over 40% of all the radiolabeled human ApoD (hApoD), injected bilaterally, to exit the central nervous system (CNS). Once in circulation, hApoD accumulates mostly in the kidneys/urine, liver, and muscles. Accumulation specificity of hApoD in these tissues was strongly correlated with the expression of lowly glycosylated basigin (BSG, CD147). hApoD was observed to pass through bEnd.3 blood brain barrier endothelial cells monolayers. However, cyclophilin A did not impact hApoD internalization rates in bEnd.3, indicating that ApoD exit from the brain is either independent of BSG or relies on additional cell types. Overall, our data showed that ApoD can quickly and efficiently exit the CNS and reach the liver and kidneys/urine, organs linked to the recycling and excretion of lipids and toxins. This indicated that cerebral overexpression during neurodegenerative episodes may serve to evacuate neurotoxic ApoD ligands from the CNS.
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spelling pubmed-80734972021-04-27 Cerebral Apolipoprotein D Exits the Brain and Accumulates in Peripheral Tissues Desmarais, Frederik Hervé, Vincent Bergeron, Karl F. Ravaut, Gaétan Perrotte, Morgane Fyfe-Desmarais, Guillaume Rassart, Eric Ramassamy, Charles Mounier, Catherine Int J Mol Sci Article Apolipoprotein D (ApoD) is a secreted lipocalin associated with neuroprotection and lipid metabolism. In rodent, the bulk of its expression occurs in the central nervous system. Despite this, ApoD has profound effects in peripheral tissues, indicating that neural ApoD may reach peripheral organs. We endeavor to determine if cerebral ApoD can reach the circulation and accumulate in peripheral tissues. Three hours was necessary for over 40% of all the radiolabeled human ApoD (hApoD), injected bilaterally, to exit the central nervous system (CNS). Once in circulation, hApoD accumulates mostly in the kidneys/urine, liver, and muscles. Accumulation specificity of hApoD in these tissues was strongly correlated with the expression of lowly glycosylated basigin (BSG, CD147). hApoD was observed to pass through bEnd.3 blood brain barrier endothelial cells monolayers. However, cyclophilin A did not impact hApoD internalization rates in bEnd.3, indicating that ApoD exit from the brain is either independent of BSG or relies on additional cell types. Overall, our data showed that ApoD can quickly and efficiently exit the CNS and reach the liver and kidneys/urine, organs linked to the recycling and excretion of lipids and toxins. This indicated that cerebral overexpression during neurodegenerative episodes may serve to evacuate neurotoxic ApoD ligands from the CNS. MDPI 2021-04-16 /pmc/articles/PMC8073497/ /pubmed/33923459 http://dx.doi.org/10.3390/ijms22084118 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Desmarais, Frederik
Hervé, Vincent
Bergeron, Karl F.
Ravaut, Gaétan
Perrotte, Morgane
Fyfe-Desmarais, Guillaume
Rassart, Eric
Ramassamy, Charles
Mounier, Catherine
Cerebral Apolipoprotein D Exits the Brain and Accumulates in Peripheral Tissues
title Cerebral Apolipoprotein D Exits the Brain and Accumulates in Peripheral Tissues
title_full Cerebral Apolipoprotein D Exits the Brain and Accumulates in Peripheral Tissues
title_fullStr Cerebral Apolipoprotein D Exits the Brain and Accumulates in Peripheral Tissues
title_full_unstemmed Cerebral Apolipoprotein D Exits the Brain and Accumulates in Peripheral Tissues
title_short Cerebral Apolipoprotein D Exits the Brain and Accumulates in Peripheral Tissues
title_sort cerebral apolipoprotein d exits the brain and accumulates in peripheral tissues
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8073497/
https://www.ncbi.nlm.nih.gov/pubmed/33923459
http://dx.doi.org/10.3390/ijms22084118
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